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类固醇激素和神经对室旁核促肾上腺皮质激素释放激素(CRH)细胞中肽类mRNA水平的差异影响:大鼠的杂交组织化学研究

Differential steroid hormone and neural influences on peptide mRNA levels in CRH cells of the paraventricular nucleus: a hybridization histochemical study in the rat.

作者信息

Swanson L W, Simmons D M

机构信息

Salk Institute for Biological Studies, La Jolla, California 92037.

出版信息

J Comp Neurol. 1989 Jul 22;285(4):413-35. doi: 10.1002/cne.902850402.

Abstract

The three major classes of neurons in the paraventricular nucleus (PVH) provide a rich model for studying hormonal and neural influences on multiple neuropeptides expressed in individual cells. A great deal of previous work has examined this problem at the immunohistochemical level, where hormonal and neural influences on peptide levels have been established. In situ hybridization methods were used here to determine whether these effects are accompanied by measurable changes in neuropeptide mRNA levels. In the first series of experiments, the time-course of corticosterone replacement effects on corticotropin-releasing hormone (CRH) mRNA levels in parvicellular neuroendocrine cells of adrenalectomized animals were determined, and a dose-response curve was established. CRH mRNA hybridization remains maximal with plasma levels of steroid up to about 50 ng/ml, then declines sharply between about 60-130 ng/ml, and is just detectable at higher levels. We confirmed that corticosterone decreases vasopressin mRNA levels in this cell group and showed that levels of preproenkephalin mRNA are also decreased, whereas no significant changes in cholecystokinin, beta-preprotachykinin, and angiotensinogen mRNA levels could be detected. Thus, corticosterone decreases some neuropeptide mRNA levels and has no influence on others in this cell group. Tyrosine hydroxylase mRNA hybridization is also unaffected in this part of the nucleus. In a second group of experiments, the cell-type specificity of corticosterone influences was examined. It was found that while the hormone depresses CRH mRNA levels in parvicellular neurons, it increases such levels in PVH neurons with descending projections, in certain magnocellular neurosecretory neurons, and in a part of the central nucleus of the amygdala, whereas no influence was detected in the rostral lateral hypothalamic area. Furthermore, the stimulatory effects of corticosterone have different threshold levels in different cell groups. Thus, in different types of neurons, corticosterone may increase, decrease, or have no influence on CRH mRNA levels. In contrast, while corticosterone depresses vasopressin mRNA levels in parvicellular CRH neurons, it has no obvious effects on vasopressin mRNA levels in magnocellular or descending neurons; as with CRH, the effects of corticosterone on vasopressin mRNA levels are cell-type specific. In a third series of experiments it was shown that glucocorticoid receptor and mineralocorticoid receptor mRNAs are found in all three cell types in the PVH and that corticosterone tends to produce modest increases in mRNA levels for both receptors. Finally, it was shown that unilateral catecholamine-depleting knife cuts do not change mRNA levels for any of the neuropeptides (or steroid hormone receptors) examined here, although dramatic changes in neuropeptide levels themselves have been shown.4+

摘要

室旁核(PVH)中的三类主要神经元为研究激素和神经对单个细胞中多种神经肽的影响提供了丰富的模型。此前大量工作已在免疫组织化学水平上研究了这个问题,其中已确定了激素和神经对肽水平的影响。本文采用原位杂交方法来确定这些效应是否伴随着神经肽mRNA水平的可测量变化。在第一组实验中,测定了肾上腺切除动物小细胞神经内分泌细胞中皮质酮替代对促肾上腺皮质激素释放激素(CRH)mRNA水平的时间进程,并建立了剂量反应曲线。当血浆类固醇水平高达约50 ng/ml时,CRH mRNA杂交仍保持最大值,然后在约60 - 130 ng/ml之间急剧下降,在更高水平时仅可检测到。我们证实皮质酮可降低该细胞群中血管加压素mRNA水平,并表明前脑啡肽原mRNA水平也降低,而胆囊收缩素、β - 前速激肽和血管紧张素原mRNA水平未检测到显著变化。因此,皮质酮降低了该细胞群中一些神经肽mRNA水平,而对其他神经肽mRNA水平无影响。酪氨酸羟化酶mRNA杂交在该核的这一部分也未受影响。在第二组实验中,研究了皮质酮影响的细胞类型特异性。发现虽然该激素可降低小细胞神经元中CRH mRNA水平,但它可增加具有下行投射的PVH神经元、某些大细胞神经分泌神经元以及杏仁核中央核一部分中的CRH mRNA水平,而在 Rostral外侧下丘脑区未检测到影响。此外,皮质酮的刺激作用在不同细胞群中有不同的阈值水平。因此,在不同类型的神经元中,皮质酮可能增加、降低或不影响CRH mRNA水平。相比之下,虽然皮质酮可降低小细胞CRH神经元中血管加压素mRNA水平,但对大细胞或下行神经元中血管加压素mRNA水平无明显影响;与CRH一样,皮质酮对血管加压素mRNA水平的影响具有细胞类型特异性。在第三组实验中表明,PVH中的所有三种细胞类型中均发现糖皮质激素受体和盐皮质激素受体mRNA,并且皮质酮倾向于使两种受体的mRNA水平适度增加。最后表明,单侧去甲肾上腺素消耗性刀切割不会改变此处检测的任何神经肽(或类固醇激素受体)的mRNA水平,尽管已显示神经肽水平本身有显著变化。4+

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